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Polarization Induced Deterioration of Reinforced Concrete with CFRP Anode

机译:CFRP阳极极化引起钢筋混凝土的劣化

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摘要

This paper investigates the deterioration of reinforced concrete with carbon fiber reinforced polymer (CFRP) anode after polarization. The steel in the concrete was first subjected to accelerated corrosion to various extents. Then, a polarization test was performed with the external attached CFRP as the anode and the steel reinforcement as the cathode. Carbon fiber reinforced mortar and conductive carbon paste as contact materials were used to adhere the CFRP anode to the concrete. Two current densities of 1244 and 2488 mA/m2, corresponding to the steel reinforcements were applied for 25 days. Electrochemical parameters were monitored during the test period. The deterioration mechanism that occurred at the CFRP/contact material interface was investigated by scanning electron microscopy (SEM) and X-ray diffraction (XRD) techniques. The increase of feeding voltage and the failure of bonding was observed during polarization process, which might have resulted from the deterioration of the interface between the contact material and CFRP. The formation and accumulation of NaCl crystals at the contact material/CFRP interface were inferred to be the main causes of the failure at the interface.
机译:本文研究了碳纤维增强聚合物(CFRP)阳极极化后钢筋混凝土的劣化情况。首先,对混凝土中的钢进行各种程度的加速腐蚀。然后,以外部附接的CFRP作为阳极并且将钢增强材料作为阴极进行极化测试。使用碳纤维增强砂浆和导电碳浆作为接触材料,将CFRP阳极粘附到混凝土上。分别施加了两种电流密度分别为1244和2488 mA / m 2 ,分别对应于钢筋的强度,持续了25天。在测试期间监测电化学参数。通过扫描电子显微镜(SEM)和X射线衍射(XRD)技术研究了CFRP /接触材料界面处发生的劣化机理。在极化过程中观察到供电电压的增加和键合的失败,这可能是由于接触材料和CFRP之间的界面变差所致。据推测,NaCl晶体在接触材料/ CFRP界面处的形成和积累是界面失效的主要原因。

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